All-optical interrogation of neural circuits during behaviour
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AI plain-English summaryMice will have their brain activity read and rewritten in real time as they make decisions with their whiskers, using a laser-based system that both records and controls individual neurons simultaneously. This matters because neuroscientists have long been able to watch brain cells fire or artificially trigger them, but rarely both at once in the same animal during behaviour. The gap is a fundamental one: we do not know how many neurons, firing in what pattern, are actually necessary for a mouse to feel a touch and act on it. Without that knowledge, theories of how the brain encodes perception remain untestable. If this succeeds, the researcher can answer a concrete question—what is the minimum spatiotemporal pattern of neural activity that creates a percept? That is a direct test of the neural code itself. This is fundamental science with no immediate clinical or engineering application. But similar work on the sensory cortex has, in the past, informed brain-computer interfaces and closed-loop prosthetics. A precise understanding of how neural ensembles encode decisions could eventually guide devices that restore sensation or movement in people with spinal cord injury or limb loss.
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Sir Henry Dale FellowshipPlain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research. Is something wrong? Let us know